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COMPARISON OF VORTEX NORMAL MODES IN EASY-PLANE FERROMAGNETS AND ANTIFERROMAGNETS

机译:平面铁磁网和反铁磁网中涡旋正常模式的比较

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The spin-wave modes associated with magnetic vortices in classical easy-plane ferromagnets (FM's) and antiferromagnets (AFM's) are studied numerically and compared. We determine the modes about a static vortex through numerical diagonalization on circular systems containing up to several hundred spins on a square lattice, as a function of the anisotropy parameter, lambda=J(z)/J(xy), where J(z) and J(xy) are the near-neighbor exchange couplings of the indicated spin components. In the FM system, a quasilocal mode is associated with the instability of vortices to transform between in-plane and out-of-plane types at a critical anisotropy lambda(c)<1. In the AFM system, the corresponding instability mode is a true local mode for the out-of-plane vortex. Both systems have degenerate pairs of modes for lambdalambda(c) in the FM system but not in the AFM system. We relate this to the presence of a gyrovector for the FM out-of-plane vortex and corresponding orbital motions associated with the translation modes, both of which are absent for the AFM out-of-plane vortices. [References: 32]
机译:对经典易平面铁磁体(FM)和反铁磁体(AFM)中与磁涡旋相关的自旋波模式进行了数值研究和比较。我们根据各向异性参数lambda = J(z)/ J(xy)的函数,通过在方格上包含多达几百个自旋的圆形系统上的数值对角线,确定关于静态涡旋的模式。和J(xy)是所示自旋分量的近邻交换耦合。在FM系统中,准局部模式与涡旋的不稳定性有关,在临界各向异性lambda(c)<1时,涡旋无法在平面内和平面外类型之间进行转换。在AFM系统中,对应的不稳定模式是平面外涡旋的真正局部模式。两种系统都具有lambda lambda(c),但在AFM系统中不分解。我们将此与FM平面外涡旋的陀螺矢量的存在以及与平移模式相关的相应轨道运动相关,而AFM平面外涡旋都不存在这两种。 [参考:32]

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